Order parameter and spectral function in $d$-wave holographic superconductors

Fuente: arXiv
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Main Authors: Ghorai, Debabrata, Yuk, Taewon, Sin, Sang-Jin
Format: Preprint
Published: 2023
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author Ghorai, Debabrata
Yuk, Taewon
Sin, Sang-Jin
author_facet Ghorai, Debabrata
Yuk, Taewon
Sin, Sang-Jin
contents We consider the $d$-wave holographic superconductor model with full backreaction on the metric, addressing a missing part in the literature. We have identified the corrected order parameter by comparing the fermionic spectral function with the momentum-dependent order parameter. By numerical investigations of the fermionic spectral function in the presence of a tensor condensate, we find the Fermi arc and the gapped behavior, which closely resemble ARPES data. Moreover, we have examined the influence of the coupling constant, chemical potential, and temperature on the spectral function. We find that $d$-wave fermionic spectral function can be obtained through $p_x$ and $p_y$ condensates combined with two fermion flavors. Similarly, combining $d_{x^2-y^2}$ and $d_{xy}$ orbitals symmetry with two fermion flavors leads to a $g$-wave spectral function.
format Preprint
id arxiv_https___arxiv_org_abs_2309_01634
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Order parameter and spectral function in $d$-wave holographic superconductors
Ghorai, Debabrata
Yuk, Taewon
Sin, Sang-Jin
High Energy Physics - Theory
Superconductivity
General Relativity and Quantum Cosmology
We consider the $d$-wave holographic superconductor model with full backreaction on the metric, addressing a missing part in the literature. We have identified the corrected order parameter by comparing the fermionic spectral function with the momentum-dependent order parameter. By numerical investigations of the fermionic spectral function in the presence of a tensor condensate, we find the Fermi arc and the gapped behavior, which closely resemble ARPES data. Moreover, we have examined the influence of the coupling constant, chemical potential, and temperature on the spectral function. We find that $d$-wave fermionic spectral function can be obtained through $p_x$ and $p_y$ condensates combined with two fermion flavors. Similarly, combining $d_{x^2-y^2}$ and $d_{xy}$ orbitals symmetry with two fermion flavors leads to a $g$-wave spectral function.
title Order parameter and spectral function in $d$-wave holographic superconductors
topic High Energy Physics - Theory
Superconductivity
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2309.01634